Perception-Production Links in Children's Speech.
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[1] G. Weismer,et al. Speech intelligibility, speaking rate, and vowel formant characteristics in Mandarin-speaking children with cochlear implant , 2012, International journal of speech-language pathology.
[2] V. Mildner,et al. Fricatives, affricates, and vowels in Croatian children with cochlear implants , 2008, Clinical linguistics & phonetics.
[3] P. D. Eimas,et al. Speech Perception in Infants , 1971, Science.
[4] Michael I. Jordan,et al. Sensorimotor adaptation in speech production. , 1998, Science.
[5] L. Lisker,et al. A Cross-Language Study of Voicing in Initial Stops: Acoustical Measurements , 1964 .
[6] David B. Pisoni,et al. Intelligibility of normal speech I: Global and fine-grained acoustic-phonetic talker characteristics , 1996, Speech Commun..
[7] R. Fox,et al. Acoustic properties of vowel production in prelingually deafened Mandarin-speaking children with cochlear implants. , 2015, The Journal of the Acoustical Society of America.
[8] A Boothroyd,et al. Speech recognition with reduced spectral cues as a function of age. , 2000, The Journal of the Acoustical Society of America.
[9] Marlys A. Macken,et al. The acquisition of the voicing contrast in English: a study of voice onset time in word-initial stop consonants , 1980, Journal of Child Language.
[10] T. Campbell,et al. Nonword repetition and child language impairment. , 1998, Journal of speech, language, and hearing research : JSLHR.
[11] M. Drinnan,et al. A Comparison of Persian Vowel Production in Hearing-Impaired Children Using a Cochlear Implant and Normal-Hearing Children. , 2016, Journal of voice : official journal of the Voice Foundation.
[12] J. Werker,et al. Influences on infant speech processing: toward a new synthesis. , 1999, Annual review of psychology.
[13] R. Shannon,et al. Speech recognition in noise as a function of the number of spectral channels: comparison of acoustic hearing and cochlear implants. , 2001, The Journal of the Acoustical Society of America.
[14] R. Rangasayee,et al. Acoustic Analysis of Speech of Cochlear Implantees and Its Implications , 2012, Clinical and experimental otorhinolaryngology.
[15] Joanna H. Lowenstein,et al. Patterns of acquisition of native voice onset time in English-learning children. , 2008, The Journal of the Acoustical Society of America.
[16] John F Culling,et al. The Benefit of Bilateral Versus Unilateral Cochlear Implantation to Speech Intelligibility in Noise , 2012, Ear and hearing.
[17] Mary Louise Edwards,et al. Perception and production in child phonology: the testing of four hypotheses , 1974, Journal of Child Language.
[18] R V Shannon,et al. Speech Recognition with Primarily Temporal Cues , 1995, Science.
[19] J. Mahshie,et al. Auditory Perception and Production of Speech Feature Contrasts by Pediatric Implant Users , 2015, Ear and hearing.
[20] Bruce J Gantz,et al. Comparison of Speech Recognition and Localization Performance in Bilateral and Unilateral Cochlear Implant Users Matched on Duration of Deafness and Age at Implantation , 2008, Ear and hearing.
[21] Joanna H Lowenstein,et al. Children discover the spectral skeletons in their native language before the amplitude envelopes. , 2009, Journal of experimental psychology. Human perception and performance.
[22] A. Jongman,et al. Acoustic characteristics of English fricatives. , 2000, The Journal of the Acoustical Society of America.
[23] P. Milenkovic,et al. Statistical analysis of word-initial voiceless obstruents: preliminary data. , 1988, The Journal of the Acoustical Society of America.
[24] J. Perkell,et al. The distinctness of speakers' productions of vowel contrasts is related to their discrimination of the contrasts. , 2004, The Journal of the Acoustical Society of America.
[25] A. Geers,et al. Acoustic Characteristics of the Speech of Young Cochlear Implant Users: A Comparison with Normal-Hearing Age-Mates , 2003, Ear and hearing.
[26] S Nittrouer,et al. Children learn separate aspects of speech production at different rates: evidence from spectral moments. , 1995, The Journal of the Acoustical Society of America.
[27] Ann E. Todd,et al. Production of contrast between sibilant fricatives by children with cochlear implants. , 2011, The Journal of the Acoustical Society of America.
[28] J. Tomblin,et al. Alveolar and Postalveolar Voiceless Fricative and Affricate Productions of Spanish-English Bilingual Children With Cochlear Implants. , 2017, Journal of speech, language, and hearing research : JSLHR.
[29] Joanna H. Lowenstein,et al. Separating the effects of acoustic and phonetic factors in linguistic processing with impoverished signals by adults and children , 2012, Applied Psycholinguistics.
[30] K. V. van Lierde,et al. A Comparison of Vowel Productions in Prelingually Deaf Children Using Cochlear Implants, Severe Hearing-Impaired Children Using Conventional Hearing Aids and Normal-Hearing Children , 2010, Folia Phoniatrica et Logopaedica.
[31] Diane Kewley-Port,et al. Early apical stop production: A voice onset time analysis , 1974 .
[32] Joanna H Lowenstein,et al. Learning to perceptually organize speech signals in native fashion. , 2010, The Journal of the Acoustical Society of America.
[33] Ruth Y Litovsky,et al. The Acoustics of Word-Initial Fricatives and Their Effect on Word-Level Intelligibility in Children With Bilateral Cochlear Implants , 2017, Ear and hearing.
[34] R. S. McGowan,et al. Speech production in 12-month-old children with and without hearing loss. , 2008, Journal of speech, language, and hearing research : JSLHR.
[35] Arturo Hernandez,et al. Initial Stop Voicing in Bilingual Children With Cochlear Implants and Their Typically Developing Peers With Normal Hearing. , 2016, Journal of speech, language, and hearing research : JSLHR.
[36] S. Bharadwaj,et al. Efficacy of the discreteness of voicing category (DOVC) measure for characterizing voicing errors in children with cochlear implants: a report. , 2008, Journal of speech, language, and hearing research : JSLHR.
[37] R. Koenigsknecht,et al. Development of the voicing contrast: a comparison of voice onset time in stop preception and production. , 1976, Journal of speech and hearing research.
[38] D. Horga,et al. Voice and pronunciation of cochlear implant speakers , 2006, Clinical linguistics & phonetics.
[39] K. V. van Lierde,et al. A comparison of the consonant production between Dutch children using cochlear implants and children using hearing aids. , 2010, International journal of pediatric otorhinolaryngology.
[40] S Nittrouer,et al. The emergence of mature gestural patterns is not uniform: evidence from an acoustic study. , 1993, Journal of speech and hearing research.
[41] Erika S. Levy,et al. Production of French vowels by American-English learners of French: language experience, consonantal context, and the perception-production relationship. , 2010, The Journal of the Acoustical Society of America.
[42] E. Tobey,et al. Emergence of speech sounds between 7 and 24 months of cochlear implant use , 2014, Cochlear implants international.
[43] Taehong Cho,et al. Variation and universals in VOT: evidence from 18 languages , 1999 .
[44] B. D. Boysson-Bardies,et al. Acoustic Investigations of Cross-linguistic Variability in Babbling , 1986 .
[45] S. Nittrouer,et al. Speech perception in noise by children with cochlear implants. , 2013, Journal of speech, language, and hearing research : JSLHR.
[46] Vesna Mildner,et al. Acoustic analysis of the speech of children with cochlear implants: A longitudinal study , 2007, Clinical linguistics & phonetics.